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The inner plexiform layer of the retina is a little more complex.
This signaling happens before bipolar cells form connections in the inner plexiform layer.
Their dendrites undergo extensive ramification in the inner plexiform layer.
Separate connectivity is established in the inner plexiform layer so that each connection is parallel.
Thus the changes observed in the present study most likely reflect changes that occur in the inner plexiform layer of the retina.
From the opposite end numerous dendrites extend into the inner plexiform layer, where they branch and form flattened arborizations at different levels.
It is much thinner than the inner plexiform layer, where amacrine cells cells synapse with retinal ganglion cells.
The inner processes of the cone bipolars ramify in the inner plexiform layer in contact with the dendrites of the ganglionic cells.
The dendrites of ON DS ganglion cells are monostratified and extend into the inner sublamina of the Inner plexiform layer.
Amacrine cells operate at the inner plexiform layer (IPL), the second synaptic retinal layer where bipolar cells and retinal ganglion cells form synapses.
The anatomy of ON/OFF cells is such that the dendrites extend to two sublaminae of the inner plexiform layer and make synapses with bipolar and amacrine cells.
Neuropil has been found in the following regions: outer neocortex layer, barrel cortex, inner plexiform layer and outer plexiform layer, posterior pituitary, glomerulus (plural glomeruli).
The inner plexiform layer is an area of the retina that is made up of a dense reticulum of fibrils formed by interlaced dendrites of retinal ganglion cells and cells of the inner nuclear layer.
The ganglion cells vary much in size, and the dendrites of the smaller ones as a rule arborize in the inner plexiform layer as soon as they enter it; while those of the larger cells ramify close to the inner nuclear layer.
OFF bipolar cells synapse in the outer layer of the inner plexiform layer of the retina, and ON bipolar cells terminate in the inner layer of the inner plexiform layer.